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High-rise industrial upstairs splicing type honeycomb net cylinder structure and system and construction method
The invention provides a high-rise industrial upstairs splicing type honeycomb-shaped net cylinder structure and system and a construction method of the high-rise industrial upstairs splicing type honeycomb-shaped net cylinder structure and system. The high-rise industrial upstairs splicing type honeycomb-shaped net cylinder structure comprises an assembly type quadrilateral open-web grid floor system, the open-web grid floor system comprises a plurality of orthogonal open-web grid units or a plurality of orthogonal oblique open-web grid units, and four side frames of the open-web grid floor system are formed by sequentially connecting a plurality of equidistant boundary beams; the four corners of the four side frames are supported by corner columns, the edge beams are supported by X-shaped inclined columns, and two top supporting legs of each X-shaped inclined column are connected with connecting joints of the edge beams respectively. Each orthogonally-placed open-web grid unit or each orthogonally-placed open-web grid unit comprises an upper rib, a lower rib and a cross-shaped steel pipe shear key. The high-rise industrial upstairs spliced honeycomb-shaped net cylinder structure is suitable for high-density industrial park construction, the core cylinder building area is effectively saved by 19.8%, the industrial large-span production requirement can be met, the structural rigidity is large, the anti-seismic performance is excellent, the assembly ratio is high, and meanwhile construction is easy.
本发明提出一种高层工业上楼拼接式蜂窝形网筒结构及体系和施工方法。本高层工业上楼拼接式蜂窝形网筒结构,包括装配式四边形的空腹网格楼盖,空腹网格楼盖包括多个正交正放空腹网格单元或多个正交斜放空腹网格单元,空腹网格楼盖的四个侧边框均采用多根等距边梁依次连接组成,四个侧边框的四角处采用角柱支撑,边梁通过X形斜柱进行支撑,X形斜柱的两顶支撑腿分别与边梁的连接节点连接;正交正放空腹网格单元或正交斜放空腹网格单元均包括上肋、下肋以及十字钢管剪力键。本高层工业上楼拼接式蜂窝形网筒结构适用于高密度工业园区建设,有效节省19.8%的核心筒建筑面积,可满足工业大跨度生产需求,结构刚度大和抗震能优越,其装配比率高,同时施工简单。
High-rise industrial upstairs splicing type honeycomb net cylinder structure and system and construction method
The invention provides a high-rise industrial upstairs splicing type honeycomb-shaped net cylinder structure and system and a construction method of the high-rise industrial upstairs splicing type honeycomb-shaped net cylinder structure and system. The high-rise industrial upstairs splicing type honeycomb-shaped net cylinder structure comprises an assembly type quadrilateral open-web grid floor system, the open-web grid floor system comprises a plurality of orthogonal open-web grid units or a plurality of orthogonal oblique open-web grid units, and four side frames of the open-web grid floor system are formed by sequentially connecting a plurality of equidistant boundary beams; the four corners of the four side frames are supported by corner columns, the edge beams are supported by X-shaped inclined columns, and two top supporting legs of each X-shaped inclined column are connected with connecting joints of the edge beams respectively. Each orthogonally-placed open-web grid unit or each orthogonally-placed open-web grid unit comprises an upper rib, a lower rib and a cross-shaped steel pipe shear key. The high-rise industrial upstairs spliced honeycomb-shaped net cylinder structure is suitable for high-density industrial park construction, the core cylinder building area is effectively saved by 19.8%, the industrial large-span production requirement can be met, the structural rigidity is large, the anti-seismic performance is excellent, the assembly ratio is high, and meanwhile construction is easy.
本发明提出一种高层工业上楼拼接式蜂窝形网筒结构及体系和施工方法。本高层工业上楼拼接式蜂窝形网筒结构,包括装配式四边形的空腹网格楼盖,空腹网格楼盖包括多个正交正放空腹网格单元或多个正交斜放空腹网格单元,空腹网格楼盖的四个侧边框均采用多根等距边梁依次连接组成,四个侧边框的四角处采用角柱支撑,边梁通过X形斜柱进行支撑,X形斜柱的两顶支撑腿分别与边梁的连接节点连接;正交正放空腹网格单元或正交斜放空腹网格单元均包括上肋、下肋以及十字钢管剪力键。本高层工业上楼拼接式蜂窝形网筒结构适用于高密度工业园区建设,有效节省19.8%的核心筒建筑面积,可满足工业大跨度生产需求,结构刚度大和抗震能优越,其装配比率高,同时施工简单。
High-rise industrial upstairs splicing type honeycomb net cylinder structure and system and construction method
高层工业上楼拼接式蜂窝形网筒结构及体系和施工方法
FANG BIFENG (author) / HAN YUQI (author) / CAO BIN (author) / HUANG JIANHUA (author) / ZHENG TONG (author) / YAO FENG (author) / CHEN FANGCHANG (author) / WANG CAIHUI (author) / PAN WEI (author) / CHEN ZIXING (author)
2024-06-11
Patent
Electronic Resource
Chinese
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